Full-Waveform Airborne Laser Scanning in Vegetation Studies—A Review of Point Cloud and Waveform Features for Tree Species Classification
In recent years, small-footprint full-waveform airborne laser scanning has become readily available and established for vegetation studies in the fields of forestry, agriculture and urban studies. Independent of the field of application and the derived final product, each study uses features to clas...
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Online Access: | http://www.mdpi.com/1999-4907/7/9/198 |
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doaj-902ecfcb9f3d486e90b98193b47383d22020-11-24T20:56:50ZengMDPI AGForests1999-49072016-09-017919810.3390/f7090198f7090198Full-Waveform Airborne Laser Scanning in Vegetation Studies—A Review of Point Cloud and Waveform Features for Tree Species ClassificationKristina Koenig0Bernhard Höfle1Institute of Geography, Heidelberg University, Heidelberg 69120, GermanyInstitute of Geography, Heidelberg University, Heidelberg 69120, GermanyIn recent years, small-footprint full-waveform airborne laser scanning has become readily available and established for vegetation studies in the fields of forestry, agriculture and urban studies. Independent of the field of application and the derived final product, each study uses features to classify a target object and to assess its characteristics (e.g., tree species). These laser scanning features describe an observable characteristic of the returned laser signal (e.g., signal amplitude) or a quantity of an object (e.g., height-width ratio of the tree crown). In particular, studies dealing with tree species classification apply a variety of such features as input. However, an extensive overview, categorization and comparison of features from full-waveform airborne laser scanning and how they relate to specific tree species are still missing. This review identifies frequently used full-waveform airborne laser scanning-based point cloud and waveform features for tree species classification and compares the applied features and their characteristics for specific tree species detection. Furthermore, limiting and influencing factors on feature characteristics and tree classification are discussed with respect to vegetation structure, data acquisition and processing.http://www.mdpi.com/1999-4907/7/9/198LiDARairborne laser scanningfull-waveformvegetationtree speciespoint cloud featureswaveform featuresclassification |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kristina Koenig Bernhard Höfle |
spellingShingle |
Kristina Koenig Bernhard Höfle Full-Waveform Airborne Laser Scanning in Vegetation Studies—A Review of Point Cloud and Waveform Features for Tree Species Classification Forests LiDAR airborne laser scanning full-waveform vegetation tree species point cloud features waveform features classification |
author_facet |
Kristina Koenig Bernhard Höfle |
author_sort |
Kristina Koenig |
title |
Full-Waveform Airborne Laser Scanning in Vegetation Studies—A Review of Point Cloud and Waveform Features for Tree Species Classification |
title_short |
Full-Waveform Airborne Laser Scanning in Vegetation Studies—A Review of Point Cloud and Waveform Features for Tree Species Classification |
title_full |
Full-Waveform Airborne Laser Scanning in Vegetation Studies—A Review of Point Cloud and Waveform Features for Tree Species Classification |
title_fullStr |
Full-Waveform Airborne Laser Scanning in Vegetation Studies—A Review of Point Cloud and Waveform Features for Tree Species Classification |
title_full_unstemmed |
Full-Waveform Airborne Laser Scanning in Vegetation Studies—A Review of Point Cloud and Waveform Features for Tree Species Classification |
title_sort |
full-waveform airborne laser scanning in vegetation studies—a review of point cloud and waveform features for tree species classification |
publisher |
MDPI AG |
series |
Forests |
issn |
1999-4907 |
publishDate |
2016-09-01 |
description |
In recent years, small-footprint full-waveform airborne laser scanning has become readily available and established for vegetation studies in the fields of forestry, agriculture and urban studies. Independent of the field of application and the derived final product, each study uses features to classify a target object and to assess its characteristics (e.g., tree species). These laser scanning features describe an observable characteristic of the returned laser signal (e.g., signal amplitude) or a quantity of an object (e.g., height-width ratio of the tree crown). In particular, studies dealing with tree species classification apply a variety of such features as input. However, an extensive overview, categorization and comparison of features from full-waveform airborne laser scanning and how they relate to specific tree species are still missing. This review identifies frequently used full-waveform airborne laser scanning-based point cloud and waveform features for tree species classification and compares the applied features and their characteristics for specific tree species detection. Furthermore, limiting and influencing factors on feature characteristics and tree classification are discussed with respect to vegetation structure, data acquisition and processing. |
topic |
LiDAR airborne laser scanning full-waveform vegetation tree species point cloud features waveform features classification |
url |
http://www.mdpi.com/1999-4907/7/9/198 |
work_keys_str_mv |
AT kristinakoenig fullwaveformairbornelaserscanninginvegetationstudiesareviewofpointcloudandwaveformfeaturesfortreespeciesclassification AT bernhardhofle fullwaveformairbornelaserscanninginvegetationstudiesareviewofpointcloudandwaveformfeaturesfortreespeciesclassification |
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